SPARK

Author:

Saad Youcef1,Wijshoff Harry A. G.2

Affiliation:

1. RIACS, Mail Stop 230-5, NASA Ames Research Center, Moffet Field, California

2. Center for Supercomputing Research and Development, University of Illinois at Urbana-Champaign, Urbana, Illinois

Abstract

As the diversity of novel architectures expands rapidly there is a growing interest in studying the behavior of these architectures for computations arising in different applications. There has been significant efforts in evaluating the performance of supercomputers on typical dense computations, and several packages for this purpose have been developed, such as the Linpack benchmark, the Lawrence Livermore Loops, and the Los Alamos Kernels. On the other hand there has been little effort put into evaluating the performance of these architectures on the more complicated and perhaps more important sparse computations. In this paper a package is proposed to fill this gap. Its goal is not only to evaluate the performance of supercomputers on sparse computations, but also to analyze the machine-algorithm interaction.

Publisher

Association for Computing Machinery (ACM)

Reference10 articles.

1. Proposed sparse extensions to the Basic Linear Algebra Subprograms

2. Performance of various computers using standard linear equations software in a FOR- TRAN environment, Argonne National Lab. ~eport;Dongarra J.J.;MCS-TM,1986

3. Sparse matrix test problems

4. The Impact of Hierarchical Memory Systems on Linear Algebra Algorithm Design;Gallivan K.;International J. Supercompute~ Applications,1988

5. Behavioral characterization of multiprocessor memory systems: a case study

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